Wu Shaobo, Storey Janet M, Storey Kenneth B
Institute of Biochemistry and Department of Biology, Carleton University, Ottawa, Ont., Canada.
J Exp Zool A Ecol Genet Physiol. 2009 Jan 1;311(1):57-67. doi: 10.1002/jez.495.
Natural freezing survival by wood frogs (Rana sylvatica) involves multiple organ-specific changes in gene expression. Screening of a cDNA library made from brain of frozen frogs revealed freeze-responsive up-regulation of the glycolytic enzyme, phosphoglycerate kinase 1 (PGK1). Northern blots showed an approximately two-fold increase in pgk1 transcripts in brain of frozen frogs whereas PGK1 protein levels rose by three- to five-fold within 4-8 hr of freezing. Freezing also elevated pgk1 transcripts in liver but not in skin. Both transcript and protein levels also rose in response to two of the component stresses of freezing (anoxia and dehydration) with a particularly pronounced (11-fold) increase in PGK1 protein in brain in response to anoxia. Amino acid sequence analysis showed 92.5% identity between wood frog and Xenopus laevis PGK1 and 86-88% identity with the zebrafish, chicken, and human protein. Four unique amino acid substitutions in the wood frog protein could be important in maintaining the functional conformation of the wood frog protein at low body temperatures. Elevated amounts of PGK1, one of the ATP-generating reactions of glycolysis, in wood frog brain during freezing would enhance the glycolytic capacity of the organ and support the maintenance of cellular energetics under the ischemic conditions of the frozen state.
林蛙(Rana sylvatica)的自然冷冻存活涉及基因表达在多个器官中的特异性变化。对冷冻林蛙脑部构建的cDNA文库进行筛选,发现糖酵解酶磷酸甘油酸激酶1(PGK1)在冷冻时表达上调。Northern杂交显示,冷冻林蛙脑部的pgk1转录本增加了约两倍,而在冷冻4 - 8小时内,PGK1蛋白水平上升了三到五倍。冷冻也使肝脏中的pgk1转录本升高,但皮肤中没有。转录本和蛋白水平也会因冷冻的两个组成应激因素(缺氧和脱水)而升高,其中脑部对缺氧的反应尤为明显,PGK1蛋白增加了11倍。氨基酸序列分析表明,林蛙与非洲爪蟾的PGK1氨基酸序列一致性为92.5%,与斑马鱼、鸡和人类蛋白的一致性为86 - 88%。林蛙蛋白中的四个独特氨基酸取代可能对在低温下维持其功能构象很重要。在冷冻过程中,林蛙脑部中糖酵解产生ATP的反应之一——PGK1的量增加,这将增强该器官的糖酵解能力,并支持在冷冻状态的缺血条件下维持细胞能量代谢。